Progress in the Development of Chitosan-Based Biomaterials for Tissue Engineering and Regenerative Medicine

Bolat Sultankulov1, Dmitriy Berillo2,3, Karina Sultankulova4

  • 1Department of Chemical Engineering, School of Engineering, Nazarbayev University, Nur-Sultan 010000, Kazakhstan.

Biomolecules
|September 13, 2019
PubMed

Related Concept Videos

Fabrication of Size-Controlled and Emulsion-Free Chitosan-Genipin Microgels for Tissue Engineering Applications05:26

Fabrication of Size-Controlled and Emulsion-Free Chitosan-Genipin Microgels for Tissue Engineering Applications

The present protocol describes a non-emulsion-based method for the fabrication of chitosan-genipin microgels. The size of these microgels can be precisely controlled, and they can display pH-dependent swelling, degrade in vivo, and be loaded with therapeutic molecules that release over time in a sustained manner, making them highly relevant for tissue engineering...
3.9K
Overview of Biomaterials07:44

Overview of Biomaterials

Biomaterials are materials engineered to interact favorably with biological organisms or molecules. These materials can be derived from or produced by an organism, or can even be a synthesized polymer. Engineers use these novel materials in a wide range of applications, such as tissue engineering, biosensing and drug delivery.
This video introduces common biologically derived materials, and provides examples of common techniques used to process them. Key challenges in the field are discussed,...
76.5K
Overview of Tissue Engineering06:51

Overview of Tissue Engineering

Tissue engineering aims to create artificial tissue from biomaterials, specific cells, and growth factors. These engineered tissue constructs have far-reaching benefits, with possibilities for organ replacement and tissue repair.
This video introduces the field of tissue engineering and examines the components of engineered tissue. This video also outlines some prominent methods used to create the tissue scaffold, introduce a cell population, and encourage growth and proliferation.
14.4K
Engineering 3D Cellularized Collagen Gels for Vascular Tissue Regeneration09:23

Engineering 3D Cellularized Collagen Gels for Vascular Tissue Regeneration

In this work, we present a technique for the rapid fabrication of living vascular tissues by direct culturing of collagen, smooth muscle cells and endothelial cells. In addition, a new protocol for the mechanical characterization of engineered vascular tissues is...
21.4K
Two Methods for Decellularization of Plant Tissues for Tissue Engineering Applications05:20

Two Methods for Decellularization of Plant Tissues for Tissue Engineering Applications

Here we present, and contrast two protocols used to decellularize plant tissues: a detergent-based approach and a detergent-free approach. Both methods leave behind the extracellular matrix of the plant tissues used, which can then be utilized as scaffolds for tissue engineering...
15.3K
A Multi-Cue Bioreactor to Evaluate the Inflammatory and Regenerative Capacity of Biomaterials under Flow and Stretch07:51

A Multi-Cue Bioreactor to Evaluate the Inflammatory and Regenerative Capacity of Biomaterials under Flow and Stretch

The goal of this protocol is to execute a dynamic co-culture of human macrophages and myofibroblasts in tubular electrospun scaffolds to investigate material-driven tissue regeneration, using a bioreactor which enables the decoupling of shear stress and cyclic...
6.1K